Introduction to Zeolite Science and Practice, Volume 58 by E.M. Flanigen, J.C. Jansen, Herman van Bekkum

By E.M. Flanigen, J.C. Jansen, Herman van Bekkum

Zeolites and similar molecular sieves have quick develop into vital pathways to new possibilities within the fields of oil processing and petrochemical synthesis. The symptoms of extreme job in either and academia are obtrusive: burgeoning papers and patent functions; expanding numbers of commercial zeolite-based approaches and their swift growth into natural chemical compounds production; fresh growth in zeolite accessibility diversity, matrix behaviour, lattice elements and satellite tv for pc buildings; and the popularity that zeolites, that are sturdy and will be regenerated, should be integrated into new, environmentally pleasant methods.

This quantity bargains a radical, up to date advent to zeolites and such comparable fabrics as crystalline aluminium phosphates and clays. Its sixteen chapters, each one written through experts, offer particular remedies of zeolite conception (including a assessment of significant developments), zeolite laboratory and study perform, and zeolite functions.

Students and participants getting into the sector will locate Introduction to Zeolite technological know-how and Practice an intensive guidebook. skilled researchers will relish its in-depth assurance of the zeolite spectrum, together with the most recent perspectives on zeolite constitution, characterization and applications.

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A. A. ), Z e o l i t e s : Facts, Figures, Future, Stud. Surf. Sci. Catal. 49A, Elsevier, Amsterdam, 1989, pp. 411-20. J. Wang, S. Feng and R. A. A. ), Z e o l i t e s : Facts, Figures, Future, Stud. Surf. Sci. Catal. 49A, Elsevier, Amsterdam, 1989, pp. 143-50. G. Yang, L. L i , J. Chen and R. Xu, J. Chem. , Chem. , (1989) 948. J. Chen and R. Xu, J. , 80 (1989) 149-51. Y. Yamagishi, S. Namba and T. A. A. ), Z e o l i t e s : Facts, Figures, Future, Stud. Surf. Sci. Catal. 49A, E l sevier, Amsterdam, 1989, pp.

36); gallophosphate (ref. 28); antimonosilicate (ref. 37); and germanosilicate (ref. 38). Harvey et al. (ref. 33) reported the synthesis of alkali beryllophosphate molecular sieves with the RHO, GIs, EDI, and ANA structure topologies, and a novel structure, BPH. Simultaneously, the first metal beryllophosphate mineral species were reported, tiptopite, with the cancrinite topology by Peacor et al. (ref. 39), and pahasapaite, with the RHO topology by Rouse et al. (ref. 40). 6. HISTORY OF SYNTHESIS A brief description o f the history of the synthetic methods developed for the molecular sieves previously described is given here.

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